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高寒树种表型可塑性的差异预测了气候变暖下性状整合。

Differential phenotypic plasticity of subalpine trees predicts trait integration under climate warming.

机构信息

Key Laboratory of Aquatic Botany and Watershed Ecology, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan, 430074, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

New Phytol. 2024 Nov;244(3):1074-1085. doi: 10.1111/nph.20067. Epub 2024 Aug 19.

Abstract

Understanding limiting factors of phenotypic plasticity is essential given its critical role in shaping biological adaptation and evolution in changing environments. It has been proposed that the pattern of phenotypic correlation could constrain trait plasticity. However, the interplay between phenotypic plasticity and integration has remained contentious. We experimentally simulated climate warming in juveniles of three subalpine tree species by exposing them to three-year in situ open-top chambers (OTCs), and then measured functional plasticity of 72 eco-physiological traits to evaluate whether phenotypic integration constituted an intrinsic constraint to plasticity. We also tested the relationship between the differences in plasticity and maintenance in trait integration. Phenotypic plasticity was positively associated with integration in deciduous tree species under warming. The difference in the plasticity of two paired traits could predict their integration in different environments, where traits displaying more similar plasticity were more likely to be correlated. Our study showed no indication that phenotypic integration constrained plasticity. More importantly, we demonstrated that differential plasticity between traits might result in a notable reorganization of the trait associations, and that warming commonly induced a tighter phenotype. Our study provides new insights into the interplay between phenotypic plasticity and integration in subalpine trees under climate warming.

摘要

理解表型可塑性的限制因素至关重要,因为它在塑造变化环境中的生物适应性和进化方面起着关键作用。有人提出,表型相关模式可能会限制性状可塑性。然而,表型可塑性和整合之间的相互作用仍然存在争议。我们通过将三种亚高山树种的幼树暴露在三年原位开顶箱(OTC)中,实验模拟了气候变暖,然后测量了 72 个生态生理性状的功能可塑性,以评估表型整合是否构成了对可塑性的内在限制。我们还测试了可塑性和性状整合维持之间差异的关系。在变暖条件下,落叶树种的表型可塑性与整合呈正相关。两个配对性状之间的可塑性差异可以预测它们在不同环境中的整合,其中表现出更相似可塑性的性状更有可能相关。我们的研究没有表明表型整合限制了可塑性。更重要的是,我们证明了性状之间的差异可塑性可能导致性状关联的显著重组,而变暖通常会导致表型更加紧密。我们的研究为气候变化下亚高山树木中表型可塑性和整合之间的相互作用提供了新的见解。

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